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Calculation of interatomic decay widths of vacancy states delocalized due to inversion symmetry

机译:空位态因反对称而异位的原子间衰变宽度的计算

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摘要

In a recent publication [J.Chem.Phys.123,204107 (2005)],we have introduced a new ab initio approach for the calculation of the widths of interatomic electronic decay of inner-shell vacancies in clusters.The new technique is based on the configuration interaction formalism first introduced for the description of resonance states by Fano [Phys.Rev.124,1866 (1961)] and on a Green function method for the description of the many-electron states involved in the electronic decay.Central to the new method is the selection of the physical excitation operators for the construction of the initial and final states of the interatomic decay.The previously described selection procedure has been formulated for localized vacancy states and runs into difficulties when applied to the decay of vacancy states delocalized due to inversion symmetry,e.g.,(2s~(-1)) ~2SIGMA_(g,u)~+states of Ne_2~+.Here we present a modified computational scheme suitable for interatomic decay of the energy-split gerade and ungerade states and apply it to the interatomic Coulombic decay in two homonuclear diatomic clusters:Ne_2 and Ca_2.
机译:在最近的出版物[J.Chem.Phys.123,204107(2005)]中,我们引入了一种新的从头计算方法,用于计算团簇内壳空位的原子间电子衰变宽度。该新技术基于Fano [Phys.Rev.124,1866(1961)]首先介绍的用于描述共振态的构型相互作用形式论,以及用于描述电子衰变中涉及的多电子态的格林函数方法。新方法是选择物理激发算子来构造原子间衰变的初始状态和最终状态。先前描述的选择程序已经针对局部空位状态制定,当应用于非局部空位状态的衰减时会遇到困难。由于反对称性,例如Ne_2〜+的(2s〜(-1))〜2SIGMA_(g,u)〜+状态。在此,我们提出了一种适合能量分裂gerade和under原子间衰变的改进计算方案。 ade状态并将其应用于两个同核双原子团簇Ne_2和Ca_2的原子间库仑衰变。

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